Login / Signup

CO Oxidation Catalytic Effects of Intrinsic Surface Defects in Rhombohedral LaMnO 3 .

Juan Tapia-PYipeng CaoJaime GallegoJorge M Osorio-GuillénDane MorganJuan F Espinal
Published in: Chemphyschem : a European journal of chemical physics and physical chemistry (2022)
There is an ongoing effort to replace rare and expensive noble-element catalysts with more abundant and less expensive transition metal oxides. With this goal in mind, the intrinsic defects of a rhombohedral perovskite-like structure of LaMnO 3 and their implications on CO catalytic properties were studied. Surface thermodynamic stability as a function of pressure (P) and temperature (T) were calculated to find the most stable surface under reaction conditions (P=0.2 atm, T=323 K to 673 K). Crystallographic planes (100), (111), (110), and (211) were evaluated and it was found that (110) with MnO 2 termination was the most stable under reaction conditions. Adsorption energies of O 2 and CO on (110) as well as the effect of intrinsic defects such as Mn and O vacancies were also calculated. It was found that O vacancies favor the interaction of CO on the surface, whereas Mn vacancies can favor the formation of carbonate species.
Keyphrases
  • transition metal
  • room temperature
  • metal organic framework
  • nitric oxide
  • oxidative stress
  • density functional theory
  • dna damage response
  • highly efficient
  • solid state